Heating and cooling in the Perseus cluster core
arXiv:astro-ph/0612426 · doi:10.1007/978-3-540-73484-0_13
Abstract
It is well known that the radiative cooling time of the hot X-ray emitting gas in the cores of most clusters of galaxies is less than 10^10 yr. In many clusters the gas temperature also drops towards the centre. If we draw a causal connection between these two properties then we infer the presence of a cooling flow onto the central galaxy. High spectral resolution XMM-Newton data and high spatial resolution Chandra data, show however a lack of X-ray emitting gas below about one third of the cluster virial temperature. The explanation is that some form of heating balances cooling. The smoothness and similarity of the cooling time profiles and the flatness of the required heating profiles all indicate that we must seek a relatively gentle, quasi-continuous (on timescales <10^8 yr), distributed heat source. The likely such source is the central black hole and its powerful jets which create bubble-like cavities in the inner hot gas. We briefly review the general heating and cooling statistics in an X-ray bright sample of cluster before we discuss the detailed situation in the Perseus cluster, the X-ray brightest cluster in the Sky.
9 pages, submitted for proceedings of "Heating vs Cooling in Galaxies and Clusters of Galaxies", August 2006, Garching
References in corpus (13)
- A very deep Chandra observation of the Perseus cluster: shocks, ripples and conduction
- The Feedback-Regulated Growth of Black Holes and Bulges through Gas Accretion and Starbursts in Cluster Central Dominant Galaxies
- X-ray Spectroscopy of Cooling Clusters
- Investigating AGN Heating in a Sample of Nearby Clusters
- The cluster-scale AGN outburst in Hydra A
- Cold molecular gas in the Perseus cluster core - Association with X-ray cavity, Halpha filaments and cooling flow -
- On viscosity, conduction and sound waves in the intracluster medium
- Impact of stochastic gas motions on galaxy cluster abundance profiles
- On the origin and excitation of the extended nebula surrounding NGC 1275
- Heating Cooling Flows with Weak Shock Waves
- OVI Observations of Galaxy Clusters: Evidence for Modest Cooling Flows
- On Heating of Cluster Cooling Flows by Sound Waves
- Tracing gas motions in the Centaurus Cluster